Related Experiment Video
Updated: Oct 2, 2025

Mouse Model of Oleic Acid-Induced Acute Respiratory Distress Syndrome
Published on: June 2, 2022
Hypothesis: Emerging Roles for Aryl Hydrocarbon Receptor in Orchestrating CoV-2-Related Inflammation
Tiziana Guarnieri1,2,3
1Cell Physiology Laboratory, Department of Biological, Geological and Environmental Sciences (BiGeA), Alma Mater Studiorum Università di Bologna, 40126 Bologna, Italy.
Abstract:
Severe Acute Respiratory Syndrome Coronavirus-2 (SARS-CoV-2) is the pathogenic agent of Coronavirus-Induced Disease-2019 (COVID-19), a multi-organ syndrome which primarily targets the respiratory system. In this review, considering the large amount of data pointing out the role of the Aryl hydrocarbon Receptor (AhR) in the inflammatory response and in the modulation of innate and adaptive immunity, we describe some mechanisms that strongly suggest its involvement in the management of COVID-19's inflammatory framework. It regulates both the expression of Angiotensin Converting Enzyme-2 (ACE-2) and its stabilizing partner, the Broad neutral Amino acid Transporter 1 (B0AT1). It induces Indolamine 2,3 dioxygenase (IDO-1), the enzyme which, starting from Tryptophan (Trp), produces Kynurenine (Kyn, Beta-Anthraniloyl-L-Alanine). The accumulation of Kyn and the depletion of Trp arrest T cell growth and induce apoptosis, setting up an immune-tolerant condition, whereas AhR and interferon type I (IFN-I) build a mutual inhibitory loop that also involves NF-kB and limits the innate response. AhR/Kyn binding boosts the production of Interleukin-6 (IL-6), thus reinforcing the inflammatory state and counteracting the IDO-dependent immune tolerance in the later stage of COVID-19. Taken together, these data depict a framework where sufficient clues suggest the possible participation of AhR in the management of COVID-19 inflammation, thus indicating an additional therapeutic target for this disease.
Insights
The Aryl hydrocarbon Receptor (AhR) plays a role in COVID-19 inflammation by regulating immune responses and ACE-2 expression. Targeting AhR may offer a new therapeutic strategy for managing COVID-19
Area of Science:
- Immunology
- Molecular Biology
- Virology
Background:
- Severe Acute Respiratory Syndrome Coronavirus-2 (SARS-CoV-2) causes COVID-19, a multi-organ disease impacting the respiratory system.
- The Aryl hydrocarbon Receptor (AhR) is implicated in inflammatory responses and immune system modulation.
- Understanding AhR's role in COVID-19 pathogenesis is crucial for developing effective treatments.
Purpose of the Study:
- To review mechanisms suggesting AhR's involvement in managing COVID-19's inflammatory framework.
- To explore AhR's regulation of key molecules like ACE-2 and IDO-1.
- To identify AhR as a potential therapeutic target for COVID-19.
Main Methods:
- Literature review of existing data on AhR, COVID-19, and immune responses.
- Analysis of AhR's regulatory functions on ACE-2, B0AT1, and IDO-1.
- Examination of the interplay between AhR, Tryptophan metabolism, and immune cell function.
Main Results:
- AhR regulates Angiotensin Converting Enzyme-2 (ACE-2) and Broad neutral Amino acid Transporter 1 (B0AT1) expression.
- AhR induces Indolamine 2,3 dioxygenase (IDO-1), leading to Tryptophan (Trp) depletion and Kynurenine (Kyn) accumulation, which impairs T cell function.
- AhR and Interferon type I (IFN-I) form an inhibitory loop with NF-kB, limiting innate immunity, while AhR/Kyn binding enhances Interleukin-6 (IL-6) production, promoting inflammation.
Conclusions:
- The Aryl hydrocarbon Receptor (AhR) is intricately involved in the inflammatory processes of COVID-19.
- AhR influences viral entry via ACE-2 regulation and modulates immune responses through Tryptophan metabolism and cytokine production.
- Targeting AhR presents a promising therapeutic avenue for mitigating COVID-19-associated inflammation.
Related Concept Videos
Inflammation
Inflammatory Response
Inflammation can be triggered by various stimuli, such as impact, abrasion, chemical irritation, infections, and extreme hot or cold temperatures. These can damage cells and connective tissue fibers,...
Inflammatory Response I: Vascular and Cellular
The JAK-STAT Signaling Pathway
Inflammatory Response II: Inflammatory Exudate and Tissue Repair
The typical wound exudate is odorless, transparent, straw-colored, thin, and watery. Exudate, however, can differ depending on the state of wound healing. Likewise, the...
Asthma-II: Pathophysiology and Classification
Additionally, environmental and genetic factors play crucial roles in determining an individual's susceptibility to asthma and the severity of their condition.
Critical processes in asthma pathophysiology include:

